Future warehouses will be made of modular embedded entities with communication ability and energy aware operation attached to the traditional materials handling and warehousing objects. This advancement is mainly to fulfill the flexibility and scalability needs of the emerging warehouses. However, it leads to a new layer of complexity during development and evaluation of such systems due to the multidisciplinarity in logistics, embedded systems, and wireless communications. Although each discipline provides theoretical approaches and simulations for these tasks, many issues are often discovered in a real deployment of the full system. In this paper we introduce PhyNetLab as a real scale warehouse testbed made of cyber physical objects (PhyNodes) developed for this type of application. The presented platform provides a possibility to check the industrial requirement of an IoT-based warehouse in addition to the typical wireless sensor networks tests. We describe the hardware and software components of the nodes in addition to the overall structure of the testbed. Finally, we will demonstrate the advantages of the testbed by evaluating the performance of the ETSI compliant radio channel access procedure for an IoT warehouse.
CITATION STYLE
Falkenberg, R., Masoudinejad, M., Buschhoff, M., Venkatapathy, A. K. R., Friesel, D., Ten Hompel, M., … Wietfeld, C. (2017). PhyNetLab: An IoT-based warehouse testbed. In Proceedings of the 2017 Federated Conference on Computer Science and Information Systems, FedCSIS 2017 (pp. 1051–1055). Institute of Electrical and Electronics Engineers Inc. https://doi.org/10.15439/2017F267
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